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Panduan dan Profil Penghargaan Nurtanio Award dan Nurtanio Pringgoadisuryo Memorial Lecture Tahun 2024
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Nurtanio, Pringgoadisuryo, Award, 2024, LectureSynopsis
Badan Riset dan Inovasi Nasional bekerja sama dengan Lembaga Pengelola Dana Pendidikan (LPDP) merasa perlu untuk memberikan penghargaan tertinggi secara berkelanjutan kepada perorangan yang berasal dari internal ataupun eksternal BRIN. Nurtanio Award merupakan salah satu bentuk apresiasi kepada insan, tokoh, ilmuwan, dan pakar (perusahaan, industri, akademisi, dan profesional) yang sudah menghasilkan berbagai prestasi dan inovasi yang luar biasa serta menaruh perhatian khusus dalam dunia penerbangan dan antariksa di Indonesia. Nurtanio Pringgoadisuryo Memorial Lecture adalah kegiatan keilmuan dalam bentuk orasi Ilmiah pada bidang penerbangan dan antariksa yang disampaikan oleh insan, tokoh, ilmuwan, dan pakar (perusahaan, industri, akademisi, profesional) yang menaruh perhatian khusus serta telah banyak memberikan inspirasi dan pemikirannya dalam pengembangan ilmu pengetahuan (iptek) dan teknologi, khususnya pada bidang penerbangan dan antariksa di Indonesia. Kami mengucapkan terima kasih kepada seluruh pihak yang telah mendukung terselenggaranya kegiatan Nurtanio Award dan Nurtanio Pringgoadisuryo Memorial Lecture Tahun 2024
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Alfarisy, D., Zuhal, L., Ortiz, M., Cirak, F., & Febrianto, E. (2024). Point collocation with mollified piecewise polynomial approximants for high-order partial differential equations. International Journal for Numerical Methods in Engineering, 125(18), e7548.
Duong, V. D., Zuhal, L. R., & Muhammad, H. (2021). Fluid–structure coupling in time domain for dynamic stall using purely Lagrangian vortex method. CEAS Aeronautical Journal, 12(2).
Duong, V. D., & Zuhal, L. R. (2022). Vortex particle method with iterative Brinkman penalization for simulation of flow past sharp-shape bodies. International Journal of Micro Air Vehicles, 14.
Duong, D. V., Luc, N. V., Tien, N. V., Palar, S. P., Zuhal, L. R., Tuan, L. A., Lin, J. K., & Wang, W. C. (2024). Near-moving-wall flows past three tandem elliptical cylinders at low Reynolds number of 150. Physics of Fluids, 36(1).
Duong, D. V., Luc, N. V., Duc, N. V., Truong, C. D., Zuhal, L. R., & Long, N. I. (2024). Direct numerical simulation of 45° oblique flow past surface-mounted square cylinder. Journal of Fluid Mechanics, 992.
Fathurrohim, L., Zuhal, L. R., Palar, P. S., & Dwianto, Y. B. (2022). Maximizing the thrust performance of flexible caudal fin panels via experimental optimization. Ocean Engineering, 266, 11296.
Firdaus, A., Luc, N. V., & Zuhal, L. R. (2023). Investigation of the flow around two tandem rotated square cylinders using the least square moving particle semi-implicit based on vortex particle method. Physics of Fluids, 35(2).
Palar, P. S., & Zuhal, L. R. (2014). Flow field around asymmetric flapping flat plate optimized using micro genetic algorithm. Proceedings of the 52nd AIAA Aerospace Sciences Meeting, AIAA Science and Technology Forum and Exposition (SciTech).
Palar, P. S., Zuhal, L. R., & Shimoyama, K. (2020). Gaussian process surrogate model with composite kernel learning for engineering design. AIAA Journal, 58(4), 1864-1880.
Palar, P. S., Zuhal, L. R., & Shimoyama, K. (2023a). Global sensitivity analysis in aerodynamic design using Shapley effects and polynomial chaos regression. IEEE Access, 11.
Palar, P. S., Zuhal, L. R., & Shimoyama, K. (2023b). Enhancing the explainability of regression-based polynomial chaos expansion by Shapley additive explanations. Reliability Engineering & System Safety, 232.
Palar, P. S., Stevenson, R., Amalinadhi, C., Zakaria, K., & Zuhal, L. R. (2023). Data-driven surrogate modeling using deep learning for uncertainty quantification of random fields. American Institute of Aeronautics and Astronautics (AIAA) Science and Technology Forum and Exposition, AIAA 2023-2044.
Putra, C. A., Palar, P. S., Stevenson, R., & Zuhal, L. R. (2022). On physics-informed deep learning for solving Navier-Stokes equations. American Institute of Aeronautics and Astronautics (AIAA) Science and Technology Forum and Exposition, AIAA 2022-1436.
Wiragunarsa, I. M., Zuhal, L. R., Dirgantara, T., & Putra, I. S. (2024a). Contact framework for total Lagrangian smoothed particle hydrodynamics using an adaptive hybrid kernel scheme. International Journal for Numerical Methods in Engineering, 125(7).
Wiragunarsa, I. M., Zuhal, L. R., Dirgantara, T., Putra, I. S., & Febrianto, E. (2024b). Total Lagrangian smoothed particle hydrodynamics with an improved bond-based deformation gradient for large strain solid dynamics. Journal of Computational Physics, 518, 113309.
Zuhal, L. R., Faza, G. A., Palar, P. S., & Liem, R. P. (2023). Performance assessment of Kriging with partial least squares for high-dimensional uncertainty and sensitivity analysis. Structural and Multidisciplinary Optimization, 66(5), 115.
Zuhal, L. R., Palar, P. S., & Shimoyama, K. (2019). A comparative study of multi-objective expected improvement for aerodynamic design. Aerospace Science and Technology, 91.
Zuhal, L. R., Zakaria, K., Palar, P. S., Shimoyama, K., & Liem, R. P. (2021). Polynomial-chaos–Kriging with gradient information for surrogate modeling in aerodynamic design. AIAA Journal, 59(8).
Zuhal, L. R., Faza, G. A., Palar, P. S., & Liem, R. P. (2023). Performance assessment of Kriging with partial least squares for high-dimensional uncertainty and sensitivity analysis. Structural and Multidisciplinary Optimization, 66(5), 115.
Chiba University. (n.d.). Graduate admission: Master’s program for double degree program special selection. https://www.se.chiba-u.jp/en/admission/first/dd.html (Accessed accessed on 23 July 2024).
Josaphat Microwave Remote Sensing Laboratory. (n.d.). Homepage. https://www.jmrsl.jp (accessed on 23 July 2024).
Nonami, K., Kartidjo, M., Yoon, K. J., & Budiyono, A. (Eds.). (2013). Autonomous control systems and vehicles: Intelligent unmanned system UAV. In J. T. Sri Sumantyo, Circularly polarized synthetic aperture radar onboard unmanned aerial vehicle (Chapter 12). Intelligent Systems, Control, and Automation: Science and Engineering (Vol. 65)K. Nonami, M. Kartidjo, K.J. Yoon, and A.Budiyono Editors, Autonomous Control Systems and Vehicles: Intelligent Unmanned System UAV Books, Chapter 12. Josaphat Tetuko Sri Sumantyo, Circularly Polarized Synthetic Aperture Radar onboard Unmanned Aerial Vehicle, Series: Intelligent Systems, Control, and Automation: Science and Engineering, Vol.65, 2013.
Sri Sumantyo, J. T., Chua, M. Y., Santosa, C. E., & Izumi, Y. (2023). Circularly polarized synthetic aperture radar. CRC PressJ.T. Sri Sumantyo, M.Y. Chua, C.E. Santosa, and Y. Izumi, Circularly Polarized Synthetic Aperture Radar, CRC Publisher, 25 Apr. 2023.
Sri Sumantyo, J. T., Yam, C. M., Santosa, C. E., Panggabean, G. F., Watanabe, T., Setiadi, B., Sri Sumantyo, F. D., Tsushima, K., Sasmita, K., Mardiyanto, A., Supartono, E., Rahardjo, E. T., Wibisono, G., Marfai, M. A., Jatmiko, R. H., Sudaryatno, Purwanto, T. H., Widartono, B. S., Kamal, M., Perissin, D., Gao, S., & Ito, K. (2021). Airborne circularly polarized synthetic aperture radar. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing (JSTARS), 14, 1676-1692J.T. Sri Sumantyo, C.M. Yam, C.E. Santosa, G.F. Panggabean, T. Watanabe, B. Setiadi, F.D. Sri Sumantyo, K. Tsushima, K. Sasmita, A. Mardiyanto, E. Supartono, E.T. Rahardjo, G. Wibisono, M.A. Marfai, R. H. Jatmiko, Sudaryatno, T. H. Purwanto, B. S. Widartono, M. Kamal, D. Perissin, S. Gao, and K. Ito, “Airborne Circularly Polarized Synthetic Aperture Radar,” IEEE Select. Topics in Appl. Earth Obs. and Rem. Sens. (JSTARS), Vol.14, pp.1676-1692, Jan 2021.
Urata, K. N., Sri Sumantyo, J. T., Santosa, C. E., & Viscor, T. (2018). Development of an L-Band SAR microsatellite antenna for Earth observation. Aerospace, 5(4), 128.K.N.Urata, J.T.Sri Sumantyo, C.E.Santosa, and T.Viscor, “Development of an L-Band SAR Microsatellite Antenna for Earth Observation,” Aerospace, Vol.5, No.4, 128, 17 Dec. 2018, MDPI.
Urata, K. N., Sri Sumantyo, J. T., Santosa, C. E., & Viscor, T. (2019). A compact C-band SAR microsatellite antenna for Earth observation. Acta Astronautica, 159, 517-526K.N. Urata, J.T. Sri Sumantyo, C.E. Santosa, and T.Viscor, “A Compact C-band SAR Microsatellite Antenna for Earth Observation,” Acta Astronautica, Vol.159, pp.517-526, Jun. 2019, Elsevier.
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